Title :
Laser Transmitter for Undersea Communications Using Third-Harmonic Generation of Fiber-Laser System at 1.5 μ m
Author :
Polynkin, Pavel ; Roussev, Rostislav ; Fejer, M.M. ; Peyghambarian, N. ; Moloney, Jerome
Author_Institution :
Arizona Univ., Tucson
Abstract :
We report a viable laser transmitter for free-space undersea communications. An all-fiber, picosecond, Watt-level master-oscillator-power-amplifier (MOPA) system at 1.5 mum based on rapid amplification of mode-locked pulses in heavily Er:Yb codoped phosphate fiber is combined with fiber pigtailed lithium niobate intensity modulator (pulse picker), to construct a fully integrated eye-safe transmitter operating at 65-Mb/s data rate, that can be used in intermediate-range (few kilometers) atmospheric communication links. For undersea use, the output of the MOPA system is frequency-tripled into the blue-green transparency window of ocean water. The wavelength conversion occurs in a simple single-pass setup utilizing a sequence of two periodically poled lithium niobate crystals, both of which are operated at room temperature. The conversion efficiency from fundamental to third harmonic reached 14% and resulted in generation of 140 mW of average power at 518 nm. The conversion efficiency can be straightforwardly increased threefold using properly antireflection-coated optics in the free-space part of the setup, and the data rate can be scaled up into the gigabit-per-second range by using a faster mode-locked oscillator in the MOPA system.
Keywords :
antireflection coatings; erbium; fibre lasers; laser mode locking; lithium compounds; marine communication; optical harmonic generation; optical links; optical modulation; optical transmitters; optical wavelength conversion; underwater optics; ytterbium; LiNbO3 - System; MOPA system; P2O5Jk:Er,Yb - System; Watt-level master-oscillator-power-amplifier system; antireflection-coated optics; atmospheric communication links; bit rate 65 Mbit/s; blue-green transparency window; fiber-laser system; free-space undersea communication; frequency tripling; integrated eye-safe transmitter; laser transmitter; mode-locked oscillator; periodically poled lithium niobate crystals; pigtailed lithium niobate intensity modulator; power 140 mW; single-pass setup; temperature 293 K to 298 K; third-harmonic generation; wavelength 1.5 mum; wavelength 518 nm; wavelength conversion; Fiber lasers; Intensity modulation; Laser mode locking; Lithium niobate; Optical fiber communication; Optical transmitters; Optical wavelength conversion; Pulse amplifiers; Pulse modulation; Underwater communication; Mode-locked fiber lasers; nonlinear wavelength conversion; optical undersea communications; periodically poled crystals;
Journal_Title :
Photonics Technology Letters, IEEE
DOI :
10.1109/LPT.2007.902709